电流体力学
印刷电子产品
数码产品
材料科学
喷嘴
喷射(流体)
制作
纳米技术
基质(水族馆)
3D打印
图层(电子)
光电子学
电场
墨水池
电气工程
复合材料
机械工程
工程类
物理
地质学
病理
热力学
替代医学
海洋学
量子力学
医学
作者
Xinlin Li,Zhijun Li,Chenhao Cong,Jian Liu,Guangwei Wang,Xuhao Wang,Fenglin Sun,Rong Wang,Hyeok‐jin Kwon,Se Hyun Kim,Shandong Li
标识
DOI:10.1021/acsaelm.4c00004
摘要
Printing, also known as additive manufacturing technology, is an interesting way for making electronic components. Electrohydrodynamic (EHD) jet printing can make extremely small ink droplets by adjusting variables such as the electric field between the substrate and the nozzle. It is a viable option for device manufacturing by using high-resolution direct printing on a variety of materials. Herein, we report EHD jet-printed 6,13-bis(triisopropylsilylethynyl)pentacene (TIPS-PEN) through cone-jet mode with a blending system of amorphous polymer and polystyrene and their utilization as active layers for organic field-effect transistors (OFETs) and integrated devices. To demonstrate the superiority of our system, we compare our approach of fabricating TIPS-PEN layers to an earlier reported dragging mode with TIPS-PEN from multiple perspectives, involving process conditions, printed layer fabrication, and crystal formation. Thus, TIPS-PEN layers designed in cone-jet mode are able to produce high-performance crystal formations with faster printing speed (∼10 mm/s) and finer pattern width (∼80 μm) with the same nozzle tip.
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